Stratification of Gene Coexpression Patterns and GO Function Mining for a RNA-Seq Data Series
Author(s) -
Hui Zhao,
Fenglin Cao,
Yonghui Gong,
Huafeng Xu,
Yiping Fei,
Longyue Wu,
Xiangmei Ye,
Dongguang Yang,
Xiuhua Liu,
Xia Li,
Jin Zhou
Publication year - 2014
Publication title -
biomed research international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.772
H-Index - 126
eISSN - 2314-6141
pISSN - 2314-6133
DOI - 10.1155/2014/969768
Subject(s) - transcriptome , biology , rna seq , computational biology , function (biology) , gene , data mining , gene expression , evolutionary biology , genetics , computer science
RNA-Seq is emerging as an increasingly important tool in biological research, and it provides the most direct evidence of the relationship between the physiological state and molecular changes in cells. A large amount of RNA-Seq data across diverse experimental conditions have been generated and deposited in public databases. However, most developed approaches for coexpression analyses focus on the coexpression pattern mining of the transcriptome, thereby ignoring the magnitude of gene differences in one pattern. Furthermore, the functional relationships of genes in one pattern, and notably among patterns, were not always recognized. In this study, we developed an integrated strategy to identify differential coexpression patterns of genes and probed the functional mechanisms of the modules. Two real datasets were used to validate the method and allow comparisons with other methods. One of the datasets was selected to illustrate the flow of a typical analysis. In summary, we present an approach to robustly detect coexpression patterns in transcriptomes and to stratify patterns according to their relative differences. Furthermore, a global relationship between patterns and biological functions was constructed. In addition, a freely accessible web toolkit “coexpression pattern mining and GO functional analysis” (COGO) was developed.
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